IP Library › Granted Patent US 9,788,891
Granted Patent B2
US 9,788,891 · App. 12/979,803 · Granted Oct 17, 2017

Ablation electrode assemblies and methods for using same

Inventors: Steven C. Christian (New Brighton, MN); Reed R. Heimbecher (Hamel, MN)
Assignee: St. Jude Medical, Atrial Fibrillation Division, Inc.
A61B18/1492A61B2018/00101A61B2018/00714A61B2018/00791A61B2218/002
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Quick Facts
Patent No.
US 9,788,891
App. No.
12/979,803
Granted
Oct 17, 2017
Kind
B2
Abstract

Ablation electrode assemblies include an inner core member and an outer shell surrounding the inner core member. The inner core member and the outer shell define a space or separation region therebetween. The inner core member is constructed from a thermally insulative material having a reduced thermal conductivity. In an embodiment, the space is a sealed or evacuated region. In other embodiments, irrigation fluid flows within the space. The ablation electrode assembly further includes at least one thermal sensor in some embodiments. Methods for providing irrigation fluid during cardiac ablation of targeted tissue are disclosed that include calculating the energy delivered to irrigation fluid as it flows within the ablation electrode assembly through temperature measurement of the irrigation fluid. Pulsatile flow of irrigation fluid can be utilized in some embodiments of the disclosure.

Claims (14)

1. An ablation electrode assembly comprising:

an inner core member having a distal end, a proximal end, and a longitudinal axis, wherein the inner core member comprises a thermal insulator having a reduced thermal conductivity; and

an outer shell surrounding at least a portion of the inner core member, the outer shell having a distal end and a proximal end, wherein the outer shell comprises an electrically conductive material;

wherein the inner core member includes a plurality of channels located on an outer surface of the inner core member;

wherein each of the plurality of channels includes a thermal sensor disposed therein; and

wherein the inner core member and the outer shell define a non-irrigated space therebetween configured to interrupt or reduce a heat transfer path between the thermal sensors.

2. The ablation electrode assembly of claim 1 , wherein the inner core member and the outer shell define a space therebetween configured to interrupt or reduce a heat transfer path between the thermal sensors disposed in each of the plurality of channels.

3. The ablation electrode assembly of claim 2 , wherein the space is annular.

4. The ablation electrode assembly of claim 2 , where the space comprises a vacuum or evacuated region.

5. The ablation electrode assembly of claim 1 , wherein the inner core member comprises:

an inner surface defining an inner cavity, and

a radially extending passageway, relative to the longitudinal axis of the inner core member, that extends from the inner cavity to the outer surface of the inner core member.

6. The ablation electrode assembly of claim 1 , wherein the inner core member further comprises an axially extending passageway, relative to the longitudinal axis of the inner core member, extending from an inner cavity of the inner core member to the distal end of the inner core member.

7. The ablation electrode assembly of claim 1 , wherein the outer shell is scored with a plurality of axially extending slots, relative to the longitudinal axis of the inner core member, to separate the outer shell into a plurality of segments.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2011
From: CHRISTIAN, STEVEN C.; HEIMBECHER, REED R.
To: ST. JUDE MEDICAL, ATRIAL FIBRILLATION DIVISION, INC.
Reel/Frame 026281/0022 →
Continuity (1)
Related Publication 20120165809A1 · Jun 28, 2012